期刊文献+

不同环境下气泡脉动特性实验研究 被引量:60

EXPERIMENTAL STUDY ON BUBBLE PULSE FEATURES UNDER DIFFERENT CIRCUMSTANCES
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摘要 水下爆炸气泡对舰船结构造成严重的毁伤,海上实船爆炸实验是考核水下爆炸气泡对舰船毁伤威力最直接、最有效的方法,然而真实情况的舰船水下爆炸实验难以进行.为此,在已有研究成果的基础上,设计实验电路,利用电容在相对较低的电压下放电打火产生的电火花气泡来模拟水下爆炸气泡,设计多组实验工况来模拟气泡在不同环境下的运动特性.研究气泡在不同环境下的脉动特性、射流特征,揭示一些特殊的实验现象,总结环境对气泡运动的影响规律. Underwater explosion bubbles do severe damage to warship structures,and the particularity of underwater explosion and the quality of water bring great difficulties to get a clear picture.So lots of laboratories all around the world make use of discharge or laser to generate bubbles to replace real underwater explosion experiments. Based on the designation from Turangan et al and Abdolranman Dadvand,an electric circuit with a relatively low voltage 200 V and three shunt-wound 2 200μF capacitances is used to generate bubbles by discharge in a 500 mm×500 mm×500 mm water tank to study underwater bubble dynamics.The experiment setup is safe, stable,low in costs and simple to fix.It can generate bubbles with radius up to 12~15mm. A device generating bubble by a relatively low voltage is designed to study bubble dynamics in detail under various boundary conditions in this paper.Main conclusions are obtained below by comparison and analysis: (1) A voltage of 200 V is adopted to generate bubble by discharge in water in this paper.The voltage is fairly low yet the bubble generated is relatively large in size.The pictures shot are pretty clear as well. (2) There are copper wires burning inside the bubble throughout the expansion process,causing the temperature inside bubble to rise apparently higher and result in the small calculated value of bubble pulsing period. So p_v within the bubble is actually very large and the calculated p_v of a single bubble pulsing in free field is 5.8×10~4Pa. (3) Bubble's second pulsing energy is merely 5%~15%of the first pulsing energy and the pulsing energy after the second pulse can be ignored. (4)γ,the dimensionless standoff is defined between bubble and boundary.Whenγ≥2.8,the influence of the wall to bubble can be neglected.When 1.95≤γ≤2.8,no jet is formed during the first cycle of bubble pulse.Whenγ≤1.53,jet is formed during the first cycle of bubble pulse,and the smallerγis,the larger bubble migration distance and the more fiercely the jet would be. (5) The bubble jetting velocity is minimum when the dimensionless standoffγis around 0.8. (6) Bubble will interact strongly with boundaries when it moves near the shipboard and the free surface. It can be seen from the experiments that the bubble may produce jets that are towards two different directions when collapsing near the free surface and the shipboard,and this will certainly lead to the weakening effect of bubble attack to the shipboard.
出处 《力学学报》 EI CSCD 北大核心 2011年第1期71-83,共13页 Chinese Journal of Theoretical and Applied Mechanics
基金 国家自然科学基金重点项目(50939002) 国家自然科学基金委员会-中国工程物理研究院联合基金资助项目(10976008) 国家自然科学基金项目(50809018 50779007) 中央高校基本科研业务费专项资金(HEUCFZ1001) 第十二届霍英东教育基金(121073)资助~~
关键词 气泡 脉动 射流 实验 高速摄影 低电压放电 bubble pulse jet experiment high-speed photography low voltage discharge
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参考文献15

  • 1Cole IZH. Underwater Explosion. Princeton: Princeton University Press, 1948.
  • 2Klaseboer E, Hung KC, Wang CW, et al. Experimental and numerical investigation oie the dynamics of an under- water explosion bubble near a resilient/rigid structure. J Fluid Mech, 2005, 537:387-413.
  • 3Kwon YW, Fox PK. Underwater shock response of a cylinder subjected to a side-on explosion. Cornput Struct, 1993, 48(4): 637-683.
  • 4汪斌,张远平,王彦平.一种水中爆炸气泡脉动实验研究方法[J].高压物理学报,2009,23(5):332-337. 被引量:11
  • 5Brett JM, Yiannakopolous G. A study of explosive effects in close proximity to a submerged cylinder. International Journal of Impact Engineering, 2008, 35:206-225.
  • 6Hung CF, Lin B J, Hwang-Fuu J J, et al. Dynamic response of cylindrical shell structures subjected to underwater explosion. Ocean Engineering, 2009, 36:564-557.
  • 7牟金磊,朱锡,黄晓明,李海涛.水下爆炸气泡射流现象的试验研究[J].哈尔滨工程大学学报,2010,21(2):154-158. 被引量:15
  • 8Blake JR, Gibson DC. Cavitation bubbles near boundaries. Ann Rev Fluid Mech, 1987, 19:99-123.
  • 9Chahine GL, Kalunuch KM, Hsiao CT. Simulation of surface piercing body coupled response to underwater bub- ble dynamics utilizing 3DynaFS, a three-dimensional BEM code. Computational Mechanics, 2003, 32:319-326.
  • 10Turangan CK, Ong GP, Klaseboer E, et al. Experimental and numerical study of transient bubble-elastic membrane interaction. Journal of Applied Physics, 2006, 100:054910.

二级参考文献24

  • 1宋博,胡时胜,王礼立.分层材料的不同排列次序对透射冲击波强度的影响[J].兵工学报,2000,21(3):272-274. 被引量:15
  • 2Strahle W C. Conventional Weapons Underwater Explosions[R]. AD-A201814,1988.
  • 3Klaseboer E, Hung K C,Wang C W, et al. Experimental and Numerical Investigation of the Dynamics of an Underwater Explosion Bubble near a Resilient/Rigid Structure [J]. J Fluid Mech, 2005,537:387-413.
  • 4Lu J P,Clarke T. Studies of Underwater Explosions [A]//The 21st International Symposium on Ballistics [C]. Adelaide, Australia, 2004 : 955-963.
  • 5Lauterborn W,Bolle H. Experimental Investigations of Cavitations-Bubble Collapse in the Neighborhood of a Solid Boundary [J]. J Fluid Meeh, 1975,72:391-399.
  • 6Chahine G L,Frederick G S,Lambrecht C J, et al. Spark-Generated Bubbles as Laboratory Scale Models of Underwater Explosions and Their Use for Validation of Simulation Tools [A]//Proceedings of the 66th Shock and Vibration Symposium [C]. Biloxi, MS, 1995 : 265-277.
  • 7Menon S,Lal M. On the Dynamics and Instability of Bubbles Formed during Underwater Explosions [J]. Experimental Thermal and Fluid Science,1998,16(4):305-321.
  • 8张颖,周刚.小当量水下爆炸实验研究[A]//第七届全国爆轰学术会议文集[C].北京,2006:222-227.
  • 9Cole P. Underwater Explosions [M]. Princeton:Princeton UniversitY, Pess, 1946:162-169.
  • 10BENJAMIN T B, ELLIS A T. The collapse of cavitation bubbles and the pressures thereby produced against solid boundaries [ J]. Philosophical Transactions of the Royal Society of London, 1966, A260 : 221-240.

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